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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Modeling the dynamic and quasi-static compression-shear failure of brittle materials by explicit phase field method
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Modeling the dynamic and quasi-static compression-shear failure of brittle materials by explicit phase field method

机译:基于显式相场法对脆性材料的动态和准静态压缩-剪切破坏进行建模

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摘要

The phase field method is a very effective method to simulate arbitrary crack propagation, branching, convergence and complex crack networks. However, most of the current phase-field models mainly focus on tensile fracture problems, which is not suitable for rock-like materials subjected to compression and shear loads. In this paper, we derive the driving force of phase field evolution based on Mohr-Coulomb criterion for rock and other materials with shear frictional characteristics and develop a three-dimensional explicit parallel phase field model. In spatial integration, the standard finite element method is used to discretize the displacement field and the phase field. For the time update, the explicit central difference scheme and the forward difference scheme are used to discretize the displacement field and the phase field respectively. These time integration methods are implemented in parallel, which can tackle the problem of the low computational efficiency of the phase field method to a certain extent. Then, three typical benchmark examples of dynamic crack propagation and branching are given to verify the correctness and efficiency of the explicit phase field model. At last, the failure processes of rock-like materials under quasi-static compression load are studied. The simulation results can well capture the compression-shear failure mode of rock-like materials.
机译:相场法是模拟任意裂纹扩展、分支、收敛和复杂裂纹网络的一种非常有效的方法。然而,目前大多数相场模型主要集中在拉伸断裂问题上,不适用于承受压缩和剪切载荷的类岩材料。本文基于Mohr-Coulomb准则推导了岩石等具有剪切摩擦特性的材料相场演化的驱动力,并建立了三维显式平行相场模型。在空间积分中,采用标准有限元法对位移场和相场进行离散化。对于时间更新,采用显式中心差分方案和前向差分方案分别对位移场和相位场进行离散化。这些时间积分方法并行实现,在一定程度上解决了相场法计算效率低的问题。然后,给出了3个动态裂纹扩展和分支的典型基准算例,验证了显式相场模型的正确性和有效性。最后,研究了类岩材料在准静态压缩载荷作用下的破坏过程。仿真结果能够较好地捕捉类岩材料的压缩-剪切破坏模式。

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